首页 | 本学科首页   官方微博 | 高级检索  
     检索      


New age constraints on the cooling and unroofing history of the Trans-Himalayan Ladakh Batholith (Kargil area), N. W. India
Authors:Rasoul B Sorkhabi  Arvind K Jain  Susumu Nishimura  Tetsumaru Itaya  Nand Lal  R M Manickavasagam  Takahiro Tagami
Institution:1. Department of Geology and Mineralogy, Faculty of Science, Kyoto University, 606, Kyoto, Japan
3. Department of Earth Sciences, University of Roorkee, 247 667, Roorkee, India
4. Hiruzen Research Institute, Okayama University of Science, 1-1 Ridaicho, 700, Okayama, Japan
5. Department of Physics, Kurukshetra University, 132-119, Kurukshetra, India
Abstract:Thermotectonic history of the Trans-Himalayan Ladakh Batholith in the Kargil area, N. W. India, is inferred from new age data obtained here in conjunction with previously published ages. Fission-track (FT) ages on apatite fall around 20±2 Ma recording cooling through temperatures of ∼100°C and indicating an unroofing of 4 km of the Ladakh Range since the Early Miocene. Coexisting apatite and zircon FT ages from two samples in Kargil show the rocks to have cooled at an average rate of 5–6°C/Ma in the past 40 Ma. Zircon FT ages together with mica K−Ar cooling ages from the Ladakh Batholith cluster around 40–50 Ma, probably indicating an Eocene phase of uplift and erosion that affected the bulk of the batholith after the continental collision of India with the Ladakh arc at 55 Ma. Components of the granitoids in Upper Eocene-Lower Oligocene sediments of the Indus Molasse in Ladakh supports this idea. Three hornblende K−Ar ages of 90 Ma, 55 Ma, and 35 Ma are also reported; these distinctly different ages probably reflect cooling through 500–550°C of three phases of I-type plutonism in Ladakh also evidenced by other available radiometric data: 102 Ma (mid-Cretaceous), 60 Ma (Palaeocene), and 40 Ma (Late Eocene); the last phase being localised sheet injections. The geodynamic implications of the age data for the India-Asia collision are discussed.
Keywords:The Himalayas  Ladakh Batholith  collision tectonics  geochronology  fission-track dating
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号